Abstract
The controllable photocatalytic C−C coupling of methanol to produce ethylene glycol (EG) is a highly desirable but challenging objective for replacing the current energy-intensive thermocatalytic process. Here, we develop a metal-free porous boron nitride catalyst that demonstrates exceptional selectivity in the photocatalytic production of EG from methanol under mild conditions. Comprehensive experiments and calculations are conducted to thoroughly investigate the reaction mechanism, revealing that the OB3 unit in the porous BN plays a critical role in the preferential activation of C−H bond in methanol to form ⋅CH2OH via a concerted proton-electron transfer mechanism. More prominent energy barriers are observed for the further dehydrogenation of the ⋅CH2OH intermediate on the OB3 unit, inhibiting the formation of some other by-products during the catalytic process. Additionally, a small downhill energy barrier for the coupling of ⋅CH2OH in the OB3 unit promotes the selective generation of EG. This study provides valuable insights into the underlying mechanisms and can serve as a guide for the design and optimization of photocatalysts for efficient and selective EG production under mild conditions. © 2024 The Authors. Angewandte Chemie International Edition published by Wiley-VCH GmbH.
| Original language | English |
|---|---|
| Article number | e202318236 |
| Journal | Angewandte Chemie - International Edition |
| Volume | 63 |
| Issue number | 14 |
| Online published | 27 Feb 2024 |
| DOIs | |
| Publication status | Published - 2 Apr 2024 |
Funding
J. Liang and Q. Song contributed equally to this work. This work was supported by Research Grants Council of the Hong Kong Special Administrative Region, China (C1009-17EF), National Natural Science Foundation of China (Grant No. 22178149), Natural Science Foundation of Jiangsu Province for Outstanding Youth Scientists (BK20211599). The authors thank Prof. Li Song from University of Science and Technology of China for the kind support of the XAF measurements.
Research Keywords
- Photocatalysis
- oxygen-doped boron nitride
- selective dehydrogenation
- C−C coupling
- high selectivity
Publisher's Copyright Statement
- This full text is made available under CC-BY-NC 4.0. https://creativecommons.org/licenses/by-nc/4.0/
RGC Funding Information
- RGC-funded
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